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Introducing our high-efficiency flotation reagent collector - xanthate for mineral processing, designed to enhance the efficiency of your flotation process. This collector product is classified under collectors and is specifically formulated for optimal performance in mineral processing applications.
The product has a CAS No of 53378-51-1 and an EINECS No of 205-440-9, ensuring its quality and compliance with industry standards. The material composition of this collector is zinc sulfide, known for its effectiveness in selectively collecting desired minerals during the flotation process.
With a focus on maximizing flotation efficiency, this collector does not have a specified viscosity, making it versatile for various operational requirements. Its high efficiency in mineral collection makes it a valuable reagent for processing plants aiming to achieve optimal mineral recovery rates.
Utilizing this xanthate collector can lead to improved mineral separation, increased recovery rates, and overall cost savings in mineral processing operations. Its classification as a collector highlights its specific function in selectively binding to mineral surfaces and facilitating their removal from the ore slurry.
Operators can benefit from the reliability and performance consistency of this high-efficiency flotation reagent collector - xanthate for mineral processing. Its consistent quality and formulation ensure predictable results, allowing for better control over the flotation process and the desired mineral concentrate.
Whether used in base metal ores, precious metal ores, or industrial minerals, this collector demonstrates its effectiveness in various mineral processing scenarios. Its versatility and performance make it a preferred choice for plants looking to enhance their flotation circuit performance.
In conclusion, our high-efficiency flotation reagent collector - xanthate for mineral processing offers a reliable and effective solution for optimizing the flotation process. With its zinc sulfide composition, industry-standard CAS and EINECS numbers, and proven performance in mineral separation, this collector is a valuable asset for achieving high-efficiency mineral recovery.
The Y&X YX817 Flotation Reagents Collectors are a high-efficiency flotation reagent collector specifically designed for mineral processing applications. Originating from China, these collectors come in IBC drum packaging, ensuring convenient handling and storage.
The Y&X YX817 collectors are ideal for various product application occasions and scenarios due to their exceptional qualities. Their main material, Zinc Sulfide, contributes to their high efficiency in mineral processing. The collectors function as selective agents, ensuring the separation of desired minerals from the ore.
With a specification as a Flotation Collector and an attribute as a Mining Collector, the Y&X YX817 collectors provide reliable performance in a range of mining operations. Their supply ability of 30000 tons per year ensures consistent availability for customers.
Customers can expect prompt delivery of the Y&X YX817 collectors within 7-10 days, offering a quick turnaround time for urgent mining projects. The payment terms of T/T provide flexibility for transactions, enhancing convenience for buyers.
Whether used in large-scale mining operations or smaller mineral processing plants, the Y&X YX817 collectors excel in delivering selective flotation outcomes. Their high efficiency as a flotation reagent collector - xanthate for mineral processing makes them a preferred choice for professionals in the mining industry.
The Product Technical Support and Services for the Flotation Reagents Collectors product include:
- Assistance with product selection based on specific mineral processing needs
- Guidance on the optimal dosage and application of the collectors
- Troubleshooting advice for any issues encountered during the flotation process
- Training and educational resources on the proper use of the reagents
- Continuous support and updates on new developments in flotation reagent technology